Charge state modulation on boron site by carbon and nitrogen localized bonding microenvironment for two-electron electrocatalytic H2O2 production
暂无分享,去创建一个
Tingting Zhang | Jinghai Liu | Limei Duan | Yin Wang | Yingqi Wang | Q. Zhuang | Hong Zhou | Zixuan Zhang | Xiangyang Li | Qin Ding | Yuxin Dang | Zhuang Quan | Yin Wang | Yingqi Wang
[1] Haotian Wang,et al. Highly active and selective oxygen reduction to H2O2 on boron-doped carbon for high production rates , 2021, Nature Communications.
[2] Hongyan Shang,et al. Significantly influenced photocatalytic performance for H2O2 generation over ultrathin g-C3N4 through regulating the migration orientation of photogenerated charge carriers , 2021 .
[3] Yanghua He,et al. Advanced Electrocatalysts with Single-Metal-Atom Active Sites. , 2020, Chemical reviews.
[4] S. Back,et al. Electrochemical Synthesis of H2O2 by Two-Electron Water Oxidation Reaction , 2020, Chem.
[5] Haotian Wang,et al. Insights into Practical-Scale Electrochemical H2O2 Synthesis , 2020, Trends in Chemistry.
[6] Haotian Wang,et al. Recommended practice to report selectivity in electrochemical synthesis of H2O2 , 2020, Nature Catalysis.
[7] Wenli Yao,et al. Effect of doping order on metal-free heteroatoms dual-doped carbon as oxygen reduction electrocatalyst , 2020 .
[8] M. Karamad,et al. Building and identifying highly active oxygenated groups in carbon materials for oxygen reduction to H2O2 , 2020, Nature Communications.
[9] Qiang Zhang,et al. Coordination Tunes Selectivity: Two-Electron Oxygen Reduction on High-Loading Molybdenum Single-Atom Catalysts. , 2020, Angewandte Chemie.
[10] Taeghwan Hyeon,et al. Atomic-level tuning of Co–N–C catalyst for high-performance electrochemical H2O2 production , 2020, Nature Materials.
[11] Yang Xia,et al. Direct electrosynthesis of pure aqueous H2O2 solutions up to 20% by weight using a solid electrolyte , 2019, Science.
[12] Yongfeng Hu,et al. Highly selective oxygen reduction to hydrogen peroxide on transition metal single atom coordination , 2019, Nature Communications.
[13] Lirong Zheng,et al. High-Concentration Single Atomic Pt Sites on Hollow CuSx for Selective O2 Reduction to H2O2 in Acid Solution , 2019, Chem.
[14] S. C. Perry,et al. Electrochemical synthesis of hydrogen peroxide from water and oxygen , 2019, Nature Reviews Chemistry.
[15] H. Hafiz,et al. Engineering Three-Dimensional (3D) Out-of-Plane Graphene Edge Sites for Highly Selective Two-Electron Oxygen Reduction Electrocatalysis , 2019, 1904.04946.
[16] J. H. Kim,et al. Active Edge-Site-Rich Carbon Nanocatalysts with Enhanced Electron Transfer for Efficient Electrochemical Hydrogen Peroxide Production. , 2019, Angewandte Chemie.
[17] Bin Wang,et al. Recent advances in energy chemistry of precious-metal-free catalysts for oxygen electrocatalysis , 2018, Chinese Chemical Letters.
[18] D. Sokaras,et al. Designing Boron Nitride Islands in Carbon Materials for Efficient Electrochemical Synthesis of Hydrogen Peroxide. , 2018, Journal of the American Chemical Society.
[19] Michael B. Ross,et al. Efficient hydrogen peroxide generation using reduced graphene oxide-based oxygen reduction electrocatalysts , 2018, Nature Catalysis.
[20] Manuela Bevilacqua,et al. N-Doped Graphitized Carbon Nanohorns as a Forefront Electrocatalyst in Highly Selective O 2 Reduction to H 2 O 2 , 2018 .
[21] Da Li,et al. Bonding Properties of Aluminum Nitride at High Pressure. , 2017, Inorganic chemistry.
[22] Jens K Nørskov,et al. One- or Two-Electron Water Oxidation, Hydroxyl Radical, or H2O2 Evolution. , 2017, The journal of physical chemistry letters.
[23] R. Pilot,et al. Nitrogen and sulfur doped mesoporous carbon as metal-free electrocatalysts for the in situ production of hydrogen peroxide , 2015 .
[24] J. Nava,et al. Mass transport studies during dissolved oxygen reduction to hydrogen peroxide in a filter-press electrolyzer using graphite felt, reticulated vitreous carbon and boron-doped diamond as cathodes , 2015 .
[25] Jens K Nørskov,et al. Selective Electrochemical Generation of Hydrogen Peroxide from Water Oxidation. , 2015, The journal of physical chemistry letters.
[26] Itai Panas,et al. Single atom hot-spots at Au-Pd nanoalloys for electrocatalytic H2O2 production. , 2011, Journal of the American Chemical Society.
[27] J. Fierro,et al. Hydrogen peroxide synthesis: an outlook beyond the anthraquinone process. , 2006, Angewandte Chemie.
[28] Yan Su,et al. Enhanced H 2 O 2 production by selective electrochemical reduction of O 2 on fluorine-doped hierarchically porous carbon , 2018 .
[29] J. Rossmeisl,et al. 20180319 H2O2 review revised (non highlighted) , 2018 .
[30] Yayuan Liu,et al. High-efficiency oxygen reduction to hydrogen peroxide catalysed by oxidized carbon materials , 2018, Nature Catalysis.
[31] Ib Chorkendorff,et al. Enabling direct H2O2 production through rational electrocatalyst design. , 2013, Nature materials.